Yujin Zhou, Haoyu Wei, Jun Zhou, Chonghu Cheng, Yong Cheng
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引用次数: 0
Abstract
A miniaturised high-isolation K-/Ka-band diplexer with exceeding adjacent channels using 3D antarafacial channel integration and vertical-quasi-coaxial-based matching network is proposed. For smaller size, lower loss and lower channel interference, the high-order low-pass filter for the K-band channel and the four-line-interdigital-coupled wideband bandpass filter for the Ka-band channel are respectively designed on two low-loss glass-based substrates, and these two substrates are integrated on the two antarafacial surface of the mounting board. The vertical-quasi-coaxial (VQC) embedded in the mounting board is not only used as three-dimensional (3D) interconnection of the two antarafacial channels but also designed as the constituent part of the matching/isolation network, and this can effectively decrease the impedance traction caused by the Ka-band filter for the K-band channel of the diplexer. In addition, four transmission zeros of the K-band filter are designed at the whole passband of the Ka-band channel to improve the isolation to the K-band channel for guaranteeing the performance of the diplexer at the Ka-band channel. Furthermore, working principle, design method and test solution of this proposed K-/Ka-band diplexer are well illustrated, and the high-isolation (>40 dB) in very adjacent wideband channels at K-band (18–23.5 GHz) and Ka-band (25.8–31.6 GHz) is achieved within a tiny size of 9 × 4 × 0.87 mm.
利用三维反面信道集成和基于垂直准同轴的匹配网络,提出了一种超过相邻信道的小型化高隔离度 K-/Ka 波段双工器。为了实现更小的尺寸、更低的损耗和更低的信道干扰,K 波段信道的高阶低通滤波器和 Ka 波段信道的四线数字耦合宽带带通滤波器分别设计在两块低损耗玻璃基板上,并将这两块基板集成在安装板的两个反面。嵌入安装板中的垂直准同轴(VQC)不仅用作两个反面通道的三维(3D)互连,还被设计为匹配/隔离网络的组成部分,从而有效降低了 Ka 波段滤波器对双工器 K 波段通道造成的阻抗牵引。此外,还在 Ka 波段信道的整个通带设计了四个 K 波段滤波器的传输零点,以提高对 K 波段信道的隔离度,从而保证双工器在 Ka 波段信道的性能。此外,还很好地说明了所提出的 K/Ka 波段双工器的工作原理、设计方法和测试方案,并在 9 × 4 × 0.87 毫米的微小尺寸内实现了 K 波段(18-23.5 千兆赫)和 Ka 波段(25.8-31.6 千兆赫)相邻宽带信道的高隔离度(40 分贝)。
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Microwave circuits including RF, microwave and millimetre-wave amplifiers, oscillators, switches, mixers and other components implemented in monolithic, hybrid, multi-chip module and other technologies. Papers on passive components may describe transmission-line and waveguide components, including filters, multiplexers, resonators, ferrite and garnet devices. For applications, papers can describe microwave sub-systems for use in communications, radar, aerospace, instrumentation, industrial and medical applications. Microwave linear and non-linear measurement techniques.
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Computational electromagnetics and synthesis of antenna structures including phased arrays and antenna design algorithms.
Radiowave propagation at all frequencies and environments.
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